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Updated: Jun 15, 2026

Derivation of a Human Brain Organoid with Microglia Development
Published on: January 17, 2025
Neuroinflammation generated by HIV-infected microglia promotes dysfunction and death of neurons in human brain
Weili Kong1,2, Julie Frouard1,2,3, Guorui Xie1,2,3
1Michael Hulton Center for HIV Cure Research at Gladstone, San Francisco, CA 94158, USA.
Abstract:
Despite the success of combination antiretroviral therapy (ART) for individuals living with HIV, mild forms of HIV-associated neurocognitive disorder (HAND) continue to occur. Brain microglia form the principal target for HIV infection in the brain. It remains unknown how infection of these cells leads to neuroinflammation, neuronal dysfunction, and/or death observed in HAND. Utilizing two different inducible pluripotent stem cell-derived brain organoid models (cerebral and choroid plexus [ChP] organoids) containing microglia, we investigated the pathogenic changes associated with HIV infection. Infection of microglia was associated with a sharp increase in CCL2 and CXCL10 chemokine gene expression and the activation of many type I interferon stimulated genes (MX1, ISG15, ISG20, IFI27, IFITM3 and others). Production of the proinflammatory chemokines persisted at low levels after treatment of the cell cultures with ART, consistent with the persistence of mild HAND following clinical introduction of ART. Expression of multiple members of the S100 family of inflammatory genes sharply increased following HIV infection of microglia measured by single-cell RNA-seq. However, S100 gene expression was not limited to microglia but was also detected more broadly in uninfected stromal cells, mature and immature ChP cells, neural progenitor cells and importantly in bystander neurons suggesting propagation of the inflammatory response to bystander cells. Neurotransmitter transporter expression declined in uninfected neurons, accompanied by increased expression of genes promoting cellular senescence and cell death. Together, these studies underscore how an inflammatory response generated in HIV-infected microglia is propagated to multiple uninfected bystander cells ultimately resulting in the dysfunction and death of bystander neurons.
Insights
HIV infection in brain microglia triggers widespread inflammation, affecting bystander neurons and leading to neurocognitive disorder (HAND) even with treatment. This neuroinflammation persists despite combination antiretroviral therapy (ART).
Area of Science:
- Neuroscience
- Immunology
- Virology
Background:
- HIV-associated neurocognitive disorder (HAND) persists despite combination antiretroviral therapy (ART).
- Brain microglia are the primary target for HIV in the central nervous system.
- The mechanisms linking HIV infection of microglia to neuroinflammation and neuronal damage in HAND remain unclear.
Purpose of the Study:
- To investigate the pathogenic changes in the brain following HIV infection using human stem cell-derived organoid models.
- To elucidate how HIV-infected microglia contribute to neuroinflammation and neuronal dysfunction.
Main Methods:
- Utilized inducible pluripotent stem cell-derived cerebral and choroid plexus (ChP) organoids containing microglia.
- Analyzed gene expression changes using single-cell RNA sequencing after HIV infection and ART treatment.
- Assessed inflammatory markers, interferon-stimulated genes, S100 family genes, and neurotransmitter transporter expression.
Main Results:
- HIV infection of microglia elevated chemokines (CCL2, CXCL10) and type I interferon-stimulated genes.
- Proinflammatory chemokine production persisted at low levels after ART treatment.
- HIV infection induced S100 inflammatory gene expression in microglia and bystander cells, including neurons.
- Uninfected neurons showed reduced neurotransmitter transporter expression and increased senescence/cell death markers.
Conclusions:
- HIV-induced inflammation originating in microglia propagates to uninfected bystander cells.
- This widespread inflammatory response contributes to neuronal dysfunction and death, explaining persistent HAND.
- The findings highlight the role of microglia-mediated inflammation in HAND pathogenesis, even with ART.

